tert-Butyl (2-(prop-2-yn-1-yloxy)ethyl)carbamate is crosslinker consisting of a propargyl group and a t-Boc protected amine group. The propargyl group reacts with azide-bearing compounds or biomolecules via copper catalyzed Click Chemistry reactions. The t-Boc protected amine can be deprotected under mild acidic conditions. Reagent grade, for research use only.
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tert-Butyl (2-(prop-2-yn-1-yloxy)ethyl)carbamate is crosslinker consisting of a propargyl group and a t-Boc protected amine group. The propargyl group reacts with azide-bearing compounds or biomolecules via copper catalyzed Click Chemistry reactions. The t-Boc protected amine can be deprotected under mild acidic conditions. Reagent grade, for research use only.
MutS Homolog 6 (MSH6) is a protein involved in the mismatch repair pathway. This protein is commonly associated with hereditary non-polyposis colorectal cancer, and mutations in this gene are correlated with the development of sporadic colorectal carcinoma. Studies have shown that mutations in MSH6, when co-indicated with mutations in MSH1 and MSH2, contribute to the development of sporadic colorectal carcinoma. Use of Anti-MSH2 is optimized when paired with MSH6, MLH1, and PMS2 in an IHC panel.
Tri-(Propargyl-PEG2-ethoxymethyl)-methane-amido-PEG3-carboxylate is reactive with azide-bearing compounds or biomolecules via copper catalyzed azide-alkyne Click Chemistry to yield a stable triazole linkage. The terminal carboxylic acid can react with primary amino groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond. Reagent grade, for research purpose. Please contact us for GMP-grade inquiries.
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Tri-(Propargyl-PEG2-ethoxymethyl)-methane-amido-PEG3-carboxylate is reactive with azide-bearing compounds or biomolecules via copper catalyzed azide-alkyne Click Chemistry to yield a stable triazole linkage. The terminal carboxylic acid can react with primary amino groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond. Reagent grade, for research purpose. Please contact us for GMP-grade inquiries.
RNA into DNA and PCR in one step? Then, this enzyme will simplify PCR analysis from RNA templates reducing labor and time. RT-KTQ2 was evolved from the thermostable KlenTaq DNA polymerase with no significant reverse transcriptase activity. Four mutations ensure that the variant is reverse transcriptase active and even PCR active, while maintaining the thermostability. This allows to perform reactions at high temperatures minimizing problems encountered with strong secondary structures in RNA that melt at elevated temperatures. For further information refer to the original publication.
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RT-KTQ2 DNA polymerase is supplied as a 5 µM solution containing glycerol and is supplied together with 10x reaction buffer.
The enzyme can also be used for real-time cycling, when adding a suitable dye.
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RNA into DNA and PCR in one step? Then, this enzyme will simplify PCR analysis from RNA templates reducing labor and time. RT-KTQ2 was evolved from the thermostable KlenTaq DNA polymerase with no significant reverse transcriptase activity. Four mutations ensure that the variant is reverse transcriptase active and even PCR active, while maintaining the thermostability. This allows to perform reactions at high temperatures minimizing problems encountered with strong secondary structures in RNA that melt at elevated temperatures. For further information refer to the original publication.